api.go 51 KB

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  1. // Copyright 2015 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package ethapi
  17. import (
  18. "bytes"
  19. "encoding/hex"
  20. "errors"
  21. "fmt"
  22. "math/big"
  23. "strings"
  24. "time"
  25. "github.com/ethereum/ethash"
  26. "github.com/ethereum/go-ethereum/accounts"
  27. "github.com/ethereum/go-ethereum/accounts/keystore"
  28. "github.com/ethereum/go-ethereum/common"
  29. "github.com/ethereum/go-ethereum/common/hexutil"
  30. "github.com/ethereum/go-ethereum/common/math"
  31. "github.com/ethereum/go-ethereum/core"
  32. "github.com/ethereum/go-ethereum/core/types"
  33. "github.com/ethereum/go-ethereum/core/vm"
  34. "github.com/ethereum/go-ethereum/crypto"
  35. "github.com/ethereum/go-ethereum/ethdb"
  36. "github.com/ethereum/go-ethereum/log"
  37. "github.com/ethereum/go-ethereum/p2p"
  38. "github.com/ethereum/go-ethereum/params"
  39. "github.com/ethereum/go-ethereum/rlp"
  40. "github.com/ethereum/go-ethereum/rpc"
  41. "github.com/syndtr/goleveldb/leveldb"
  42. "github.com/syndtr/goleveldb/leveldb/util"
  43. "golang.org/x/net/context"
  44. )
  45. const (
  46. defaultGas = 90000
  47. defaultGasPrice = 50 * params.Shannon
  48. emptyHex = "0x"
  49. )
  50. // PublicEthereumAPI provides an API to access Ethereum related information.
  51. // It offers only methods that operate on public data that is freely available to anyone.
  52. type PublicEthereumAPI struct {
  53. b Backend
  54. }
  55. // NewPublicEthereumAPI creates a new Etheruem protocol API.
  56. func NewPublicEthereumAPI(b Backend) *PublicEthereumAPI {
  57. return &PublicEthereumAPI{b}
  58. }
  59. // GasPrice returns a suggestion for a gas price.
  60. func (s *PublicEthereumAPI) GasPrice(ctx context.Context) (*big.Int, error) {
  61. return s.b.SuggestPrice(ctx)
  62. }
  63. // ProtocolVersion returns the current Ethereum protocol version this node supports
  64. func (s *PublicEthereumAPI) ProtocolVersion() hexutil.Uint {
  65. return hexutil.Uint(s.b.ProtocolVersion())
  66. }
  67. // Syncing returns false in case the node is currently not syncing with the network. It can be up to date or has not
  68. // yet received the latest block headers from its pears. In case it is synchronizing:
  69. // - startingBlock: block number this node started to synchronise from
  70. // - currentBlock: block number this node is currently importing
  71. // - highestBlock: block number of the highest block header this node has received from peers
  72. // - pulledStates: number of state entries processed until now
  73. // - knownStates: number of known state entries that still need to be pulled
  74. func (s *PublicEthereumAPI) Syncing() (interface{}, error) {
  75. progress := s.b.Downloader().Progress()
  76. // Return not syncing if the synchronisation already completed
  77. if progress.CurrentBlock >= progress.HighestBlock {
  78. return false, nil
  79. }
  80. // Otherwise gather the block sync stats
  81. return map[string]interface{}{
  82. "startingBlock": hexutil.Uint64(progress.StartingBlock),
  83. "currentBlock": hexutil.Uint64(progress.CurrentBlock),
  84. "highestBlock": hexutil.Uint64(progress.HighestBlock),
  85. "pulledStates": hexutil.Uint64(progress.PulledStates),
  86. "knownStates": hexutil.Uint64(progress.KnownStates),
  87. }, nil
  88. }
  89. // PublicTxPoolAPI offers and API for the transaction pool. It only operates on data that is non confidential.
  90. type PublicTxPoolAPI struct {
  91. b Backend
  92. }
  93. // NewPublicTxPoolAPI creates a new tx pool service that gives information about the transaction pool.
  94. func NewPublicTxPoolAPI(b Backend) *PublicTxPoolAPI {
  95. return &PublicTxPoolAPI{b}
  96. }
  97. // Content returns the transactions contained within the transaction pool.
  98. func (s *PublicTxPoolAPI) Content() map[string]map[string]map[string]*RPCTransaction {
  99. content := map[string]map[string]map[string]*RPCTransaction{
  100. "pending": make(map[string]map[string]*RPCTransaction),
  101. "queued": make(map[string]map[string]*RPCTransaction),
  102. }
  103. pending, queue := s.b.TxPoolContent()
  104. // Flatten the pending transactions
  105. for account, txs := range pending {
  106. dump := make(map[string]*RPCTransaction)
  107. for nonce, tx := range txs {
  108. dump[fmt.Sprintf("%d", nonce)] = newRPCPendingTransaction(tx)
  109. }
  110. content["pending"][account.Hex()] = dump
  111. }
  112. // Flatten the queued transactions
  113. for account, txs := range queue {
  114. dump := make(map[string]*RPCTransaction)
  115. for nonce, tx := range txs {
  116. dump[fmt.Sprintf("%d", nonce)] = newRPCPendingTransaction(tx)
  117. }
  118. content["queued"][account.Hex()] = dump
  119. }
  120. return content
  121. }
  122. // Status returns the number of pending and queued transaction in the pool.
  123. func (s *PublicTxPoolAPI) Status() map[string]hexutil.Uint {
  124. pending, queue := s.b.Stats()
  125. return map[string]hexutil.Uint{
  126. "pending": hexutil.Uint(pending),
  127. "queued": hexutil.Uint(queue),
  128. }
  129. }
  130. // Inspect retrieves the content of the transaction pool and flattens it into an
  131. // easily inspectable list.
  132. func (s *PublicTxPoolAPI) Inspect() map[string]map[string]map[string]string {
  133. content := map[string]map[string]map[string]string{
  134. "pending": make(map[string]map[string]string),
  135. "queued": make(map[string]map[string]string),
  136. }
  137. pending, queue := s.b.TxPoolContent()
  138. // Define a formatter to flatten a transaction into a string
  139. var format = func(tx *types.Transaction) string {
  140. if to := tx.To(); to != nil {
  141. return fmt.Sprintf("%s: %v wei + %v × %v gas", tx.To().Hex(), tx.Value(), tx.Gas(), tx.GasPrice())
  142. }
  143. return fmt.Sprintf("contract creation: %v wei + %v × %v gas", tx.Value(), tx.Gas(), tx.GasPrice())
  144. }
  145. // Flatten the pending transactions
  146. for account, txs := range pending {
  147. dump := make(map[string]string)
  148. for nonce, tx := range txs {
  149. dump[fmt.Sprintf("%d", nonce)] = format(tx)
  150. }
  151. content["pending"][account.Hex()] = dump
  152. }
  153. // Flatten the queued transactions
  154. for account, txs := range queue {
  155. dump := make(map[string]string)
  156. for nonce, tx := range txs {
  157. dump[fmt.Sprintf("%d", nonce)] = format(tx)
  158. }
  159. content["queued"][account.Hex()] = dump
  160. }
  161. return content
  162. }
  163. // PublicAccountAPI provides an API to access accounts managed by this node.
  164. // It offers only methods that can retrieve accounts.
  165. type PublicAccountAPI struct {
  166. am *accounts.Manager
  167. }
  168. // NewPublicAccountAPI creates a new PublicAccountAPI.
  169. func NewPublicAccountAPI(am *accounts.Manager) *PublicAccountAPI {
  170. return &PublicAccountAPI{am: am}
  171. }
  172. // Accounts returns the collection of accounts this node manages
  173. func (s *PublicAccountAPI) Accounts() []common.Address {
  174. var addresses []common.Address
  175. for _, wallet := range s.am.Wallets() {
  176. for _, account := range wallet.Accounts() {
  177. addresses = append(addresses, account.Address)
  178. }
  179. }
  180. return addresses
  181. }
  182. // PrivateAccountAPI provides an API to access accounts managed by this node.
  183. // It offers methods to create, (un)lock en list accounts. Some methods accept
  184. // passwords and are therefore considered private by default.
  185. type PrivateAccountAPI struct {
  186. am *accounts.Manager
  187. b Backend
  188. }
  189. // NewPrivateAccountAPI create a new PrivateAccountAPI.
  190. func NewPrivateAccountAPI(b Backend) *PrivateAccountAPI {
  191. return &PrivateAccountAPI{
  192. am: b.AccountManager(),
  193. b: b,
  194. }
  195. }
  196. // ListAccounts will return a list of addresses for accounts this node manages.
  197. func (s *PrivateAccountAPI) ListAccounts() []common.Address {
  198. var addresses []common.Address
  199. for _, wallet := range s.am.Wallets() {
  200. for _, account := range wallet.Accounts() {
  201. addresses = append(addresses, account.Address)
  202. }
  203. }
  204. return addresses
  205. }
  206. // rawWallet is a JSON representation of an accounts.Wallet interface, with its
  207. // data contents extracted into plain fields.
  208. type rawWallet struct {
  209. URL string `json:"url"`
  210. Status string `json:"status"`
  211. Accounts []accounts.Account `json:"accounts"`
  212. }
  213. // ListWallets will return a list of wallets this node manages.
  214. func (s *PrivateAccountAPI) ListWallets() []rawWallet {
  215. var wallets []rawWallet
  216. for _, wallet := range s.am.Wallets() {
  217. wallets = append(wallets, rawWallet{
  218. URL: wallet.URL().String(),
  219. Status: wallet.Status(),
  220. Accounts: wallet.Accounts(),
  221. })
  222. }
  223. return wallets
  224. }
  225. // DeriveAccount requests a HD wallet to derive a new account, optionally pinning
  226. // it for later reuse.
  227. func (s *PrivateAccountAPI) DeriveAccount(url string, path string, pin *bool) (accounts.Account, error) {
  228. wallet, err := s.am.Wallet(url)
  229. if err != nil {
  230. return accounts.Account{}, err
  231. }
  232. derivPath, err := accounts.ParseDerivationPath(path)
  233. if err != nil {
  234. return accounts.Account{}, err
  235. }
  236. if pin == nil {
  237. pin = new(bool)
  238. }
  239. return wallet.Derive(derivPath, *pin)
  240. }
  241. // NewAccount will create a new account and returns the address for the new account.
  242. func (s *PrivateAccountAPI) NewAccount(password string) (common.Address, error) {
  243. acc, err := fetchKeystore(s.am).NewAccount(password)
  244. if err == nil {
  245. return acc.Address, nil
  246. }
  247. return common.Address{}, err
  248. }
  249. // fetchKeystore retrives the encrypted keystore from the account manager.
  250. func fetchKeystore(am *accounts.Manager) *keystore.KeyStore {
  251. return am.Backends(keystore.KeyStoreType)[0].(*keystore.KeyStore)
  252. }
  253. // ImportRawKey stores the given hex encoded ECDSA key into the key directory,
  254. // encrypting it with the passphrase.
  255. func (s *PrivateAccountAPI) ImportRawKey(privkey string, password string) (common.Address, error) {
  256. hexkey, err := hex.DecodeString(privkey)
  257. if err != nil {
  258. return common.Address{}, err
  259. }
  260. acc, err := fetchKeystore(s.am).ImportECDSA(crypto.ToECDSA(hexkey), password)
  261. return acc.Address, err
  262. }
  263. // UnlockAccount will unlock the account associated with the given address with
  264. // the given password for duration seconds. If duration is nil it will use a
  265. // default of 300 seconds. It returns an indication if the account was unlocked.
  266. func (s *PrivateAccountAPI) UnlockAccount(addr common.Address, password string, duration *uint64) (bool, error) {
  267. const max = uint64(time.Duration(math.MaxInt64) / time.Second)
  268. var d time.Duration
  269. if duration == nil {
  270. d = 300 * time.Second
  271. } else if *duration > max {
  272. return false, errors.New("unlock duration too large")
  273. } else {
  274. d = time.Duration(*duration) * time.Second
  275. }
  276. err := fetchKeystore(s.am).TimedUnlock(accounts.Account{Address: addr}, password, d)
  277. return err == nil, err
  278. }
  279. // LockAccount will lock the account associated with the given address when it's unlocked.
  280. func (s *PrivateAccountAPI) LockAccount(addr common.Address) bool {
  281. return fetchKeystore(s.am).Lock(addr) == nil
  282. }
  283. // SendTransaction will create a transaction from the given arguments and
  284. // tries to sign it with the key associated with args.To. If the given passwd isn't
  285. // able to decrypt the key it fails.
  286. func (s *PrivateAccountAPI) SendTransaction(ctx context.Context, args SendTxArgs, passwd string) (common.Hash, error) {
  287. // Set some sanity defaults and terminate on failure
  288. if err := args.setDefaults(ctx, s.b); err != nil {
  289. return common.Hash{}, err
  290. }
  291. // Look up the wallet containing the requested signer
  292. account := accounts.Account{Address: args.From}
  293. wallet, err := s.am.Find(account)
  294. if err != nil {
  295. return common.Hash{}, err
  296. }
  297. // Assemble the transaction and sign with the wallet
  298. tx := args.toTransaction()
  299. var chainID *big.Int
  300. if config := s.b.ChainConfig(); config.IsEIP155(s.b.CurrentBlock().Number()) {
  301. chainID = config.ChainId
  302. }
  303. signed, err := wallet.SignTxWithPassphrase(account, passwd, tx, chainID)
  304. if err != nil {
  305. return common.Hash{}, err
  306. }
  307. return submitTransaction(ctx, s.b, signed)
  308. }
  309. // signHash is a helper function that calculates a hash for the given message that can be
  310. // safely used to calculate a signature from.
  311. //
  312. // The hash is calulcated as
  313. // keccak256("\x19Ethereum Signed Message:\n"${message length}${message}).
  314. //
  315. // This gives context to the signed message and prevents signing of transactions.
  316. func signHash(data []byte) []byte {
  317. msg := fmt.Sprintf("\x19Ethereum Signed Message:\n%d%s", len(data), data)
  318. return crypto.Keccak256([]byte(msg))
  319. }
  320. // Sign calculates an Ethereum ECDSA signature for:
  321. // keccack256("\x19Ethereum Signed Message:\n" + len(message) + message))
  322. //
  323. // Note, the produced signature conforms to the secp256k1 curve R, S and V values,
  324. // where the V value will be 27 or 28 for legacy reasons.
  325. //
  326. // The key used to calculate the signature is decrypted with the given password.
  327. //
  328. // https://github.com/ethereum/go-ethereum/wiki/Management-APIs#personal_sign
  329. func (s *PrivateAccountAPI) Sign(ctx context.Context, data hexutil.Bytes, addr common.Address, passwd string) (hexutil.Bytes, error) {
  330. // Look up the wallet containing the requested signer
  331. account := accounts.Account{Address: addr}
  332. wallet, err := s.b.AccountManager().Find(account)
  333. if err != nil {
  334. return nil, err
  335. }
  336. // Assemble sign the data with the wallet
  337. signature, err := wallet.SignHashWithPassphrase(account, passwd, signHash(data))
  338. if err != nil {
  339. return nil, err
  340. }
  341. signature[64] += 27 // Transform V from 0/1 to 27/28 according to the yellow paper
  342. return signature, nil
  343. }
  344. // EcRecover returns the address for the account that was used to create the signature.
  345. // Note, this function is compatible with eth_sign and personal_sign. As such it recovers
  346. // the address of:
  347. // hash = keccak256("\x19Ethereum Signed Message:\n"${message length}${message})
  348. // addr = ecrecover(hash, signature)
  349. //
  350. // Note, the signature must conform to the secp256k1 curve R, S and V values, where
  351. // the V value must be be 27 or 28 for legacy reasons.
  352. //
  353. // https://github.com/ethereum/go-ethereum/wiki/Management-APIs#personal_ecRecover
  354. func (s *PrivateAccountAPI) EcRecover(ctx context.Context, data, sig hexutil.Bytes) (common.Address, error) {
  355. if len(sig) != 65 {
  356. return common.Address{}, fmt.Errorf("signature must be 65 bytes long")
  357. }
  358. if sig[64] != 27 && sig[64] != 28 {
  359. return common.Address{}, fmt.Errorf("invalid Ethereum signature (V is not 27 or 28)")
  360. }
  361. sig[64] -= 27 // Transform yellow paper V from 27/28 to 0/1
  362. rpk, err := crypto.Ecrecover(signHash(data), sig)
  363. if err != nil {
  364. return common.Address{}, err
  365. }
  366. pubKey := crypto.ToECDSAPub(rpk)
  367. recoveredAddr := crypto.PubkeyToAddress(*pubKey)
  368. return recoveredAddr, nil
  369. }
  370. // SignAndSendTransaction was renamed to SendTransaction. This method is deprecated
  371. // and will be removed in the future. It primary goal is to give clients time to update.
  372. func (s *PrivateAccountAPI) SignAndSendTransaction(ctx context.Context, args SendTxArgs, passwd string) (common.Hash, error) {
  373. return s.SendTransaction(ctx, args, passwd)
  374. }
  375. // PublicBlockChainAPI provides an API to access the Ethereum blockchain.
  376. // It offers only methods that operate on public data that is freely available to anyone.
  377. type PublicBlockChainAPI struct {
  378. b Backend
  379. }
  380. // NewPublicBlockChainAPI creates a new Etheruem blockchain API.
  381. func NewPublicBlockChainAPI(b Backend) *PublicBlockChainAPI {
  382. return &PublicBlockChainAPI{b}
  383. }
  384. // BlockNumber returns the block number of the chain head.
  385. func (s *PublicBlockChainAPI) BlockNumber() *big.Int {
  386. header, _ := s.b.HeaderByNumber(context.Background(), rpc.LatestBlockNumber) // latest header should always be available
  387. return header.Number
  388. }
  389. // GetBalance returns the amount of wei for the given address in the state of the
  390. // given block number. The rpc.LatestBlockNumber and rpc.PendingBlockNumber meta
  391. // block numbers are also allowed.
  392. func (s *PublicBlockChainAPI) GetBalance(ctx context.Context, address common.Address, blockNr rpc.BlockNumber) (*big.Int, error) {
  393. state, _, err := s.b.StateAndHeaderByNumber(ctx, blockNr)
  394. if state == nil || err != nil {
  395. return nil, err
  396. }
  397. return state.GetBalance(ctx, address)
  398. }
  399. // GetBlockByNumber returns the requested block. When blockNr is -1 the chain head is returned. When fullTx is true all
  400. // transactions in the block are returned in full detail, otherwise only the transaction hash is returned.
  401. func (s *PublicBlockChainAPI) GetBlockByNumber(ctx context.Context, blockNr rpc.BlockNumber, fullTx bool) (map[string]interface{}, error) {
  402. block, err := s.b.BlockByNumber(ctx, blockNr)
  403. if block != nil {
  404. response, err := s.rpcOutputBlock(block, true, fullTx)
  405. if err == nil && blockNr == rpc.PendingBlockNumber {
  406. // Pending blocks need to nil out a few fields
  407. for _, field := range []string{"hash", "nonce", "miner"} {
  408. response[field] = nil
  409. }
  410. }
  411. return response, err
  412. }
  413. return nil, err
  414. }
  415. // GetBlockByHash returns the requested block. When fullTx is true all transactions in the block are returned in full
  416. // detail, otherwise only the transaction hash is returned.
  417. func (s *PublicBlockChainAPI) GetBlockByHash(ctx context.Context, blockHash common.Hash, fullTx bool) (map[string]interface{}, error) {
  418. block, err := s.b.GetBlock(ctx, blockHash)
  419. if block != nil {
  420. return s.rpcOutputBlock(block, true, fullTx)
  421. }
  422. return nil, err
  423. }
  424. // GetUncleByBlockNumberAndIndex returns the uncle block for the given block hash and index. When fullTx is true
  425. // all transactions in the block are returned in full detail, otherwise only the transaction hash is returned.
  426. func (s *PublicBlockChainAPI) GetUncleByBlockNumberAndIndex(ctx context.Context, blockNr rpc.BlockNumber, index hexutil.Uint) (map[string]interface{}, error) {
  427. block, err := s.b.BlockByNumber(ctx, blockNr)
  428. if block != nil {
  429. uncles := block.Uncles()
  430. if index >= hexutil.Uint(len(uncles)) {
  431. log.Debug(fmt.Sprintf("uncle block on index %d not found for block #%d", index, blockNr))
  432. return nil, nil
  433. }
  434. block = types.NewBlockWithHeader(uncles[index])
  435. return s.rpcOutputBlock(block, false, false)
  436. }
  437. return nil, err
  438. }
  439. // GetUncleByBlockHashAndIndex returns the uncle block for the given block hash and index. When fullTx is true
  440. // all transactions in the block are returned in full detail, otherwise only the transaction hash is returned.
  441. func (s *PublicBlockChainAPI) GetUncleByBlockHashAndIndex(ctx context.Context, blockHash common.Hash, index hexutil.Uint) (map[string]interface{}, error) {
  442. block, err := s.b.GetBlock(ctx, blockHash)
  443. if block != nil {
  444. uncles := block.Uncles()
  445. if index >= hexutil.Uint(len(uncles)) {
  446. log.Debug(fmt.Sprintf("uncle block on index %d not found for block %s", index, blockHash.Hex()))
  447. return nil, nil
  448. }
  449. block = types.NewBlockWithHeader(uncles[index])
  450. return s.rpcOutputBlock(block, false, false)
  451. }
  452. return nil, err
  453. }
  454. // GetUncleCountByBlockNumber returns number of uncles in the block for the given block number
  455. func (s *PublicBlockChainAPI) GetUncleCountByBlockNumber(ctx context.Context, blockNr rpc.BlockNumber) *hexutil.Uint {
  456. if block, _ := s.b.BlockByNumber(ctx, blockNr); block != nil {
  457. n := hexutil.Uint(len(block.Uncles()))
  458. return &n
  459. }
  460. return nil
  461. }
  462. // GetUncleCountByBlockHash returns number of uncles in the block for the given block hash
  463. func (s *PublicBlockChainAPI) GetUncleCountByBlockHash(ctx context.Context, blockHash common.Hash) *hexutil.Uint {
  464. if block, _ := s.b.GetBlock(ctx, blockHash); block != nil {
  465. n := hexutil.Uint(len(block.Uncles()))
  466. return &n
  467. }
  468. return nil
  469. }
  470. // GetCode returns the code stored at the given address in the state for the given block number.
  471. func (s *PublicBlockChainAPI) GetCode(ctx context.Context, address common.Address, blockNr rpc.BlockNumber) (string, error) {
  472. state, _, err := s.b.StateAndHeaderByNumber(ctx, blockNr)
  473. if state == nil || err != nil {
  474. return "", err
  475. }
  476. res, err := state.GetCode(ctx, address)
  477. if len(res) == 0 || err != nil { // backwards compatibility
  478. return "0x", err
  479. }
  480. return common.ToHex(res), nil
  481. }
  482. // GetStorageAt returns the storage from the state at the given address, key and
  483. // block number. The rpc.LatestBlockNumber and rpc.PendingBlockNumber meta block
  484. // numbers are also allowed.
  485. func (s *PublicBlockChainAPI) GetStorageAt(ctx context.Context, address common.Address, key string, blockNr rpc.BlockNumber) (string, error) {
  486. state, _, err := s.b.StateAndHeaderByNumber(ctx, blockNr)
  487. if state == nil || err != nil {
  488. return "0x", err
  489. }
  490. res, err := state.GetState(ctx, address, common.HexToHash(key))
  491. if err != nil {
  492. return "0x", err
  493. }
  494. return res.Hex(), nil
  495. }
  496. // callmsg is the message type used for call transitions.
  497. type callmsg struct {
  498. addr common.Address
  499. to *common.Address
  500. gas, gasPrice *big.Int
  501. value *big.Int
  502. data []byte
  503. }
  504. // accessor boilerplate to implement core.Message
  505. func (m callmsg) From() (common.Address, error) { return m.addr, nil }
  506. func (m callmsg) FromFrontier() (common.Address, error) { return m.addr, nil }
  507. func (m callmsg) Nonce() uint64 { return 0 }
  508. func (m callmsg) CheckNonce() bool { return false }
  509. func (m callmsg) To() *common.Address { return m.to }
  510. func (m callmsg) GasPrice() *big.Int { return m.gasPrice }
  511. func (m callmsg) Gas() *big.Int { return m.gas }
  512. func (m callmsg) Value() *big.Int { return m.value }
  513. func (m callmsg) Data() []byte { return m.data }
  514. // CallArgs represents the arguments for a call.
  515. type CallArgs struct {
  516. From common.Address `json:"from"`
  517. To *common.Address `json:"to"`
  518. Gas hexutil.Big `json:"gas"`
  519. GasPrice hexutil.Big `json:"gasPrice"`
  520. Value hexutil.Big `json:"value"`
  521. Data hexutil.Bytes `json:"data"`
  522. }
  523. func (s *PublicBlockChainAPI) doCall(ctx context.Context, args CallArgs, blockNr rpc.BlockNumber, vmCfg vm.Config) ([]byte, *big.Int, error) {
  524. defer func(start time.Time) { log.Debug(fmt.Sprintf("call took %v", time.Since(start))) }(time.Now())
  525. state, header, err := s.b.StateAndHeaderByNumber(ctx, blockNr)
  526. if state == nil || err != nil {
  527. return nil, common.Big0, err
  528. }
  529. // Set sender address or use a default if none specified
  530. addr := args.From
  531. if addr == (common.Address{}) {
  532. if wallets := s.b.AccountManager().Wallets(); len(wallets) > 0 {
  533. if accounts := wallets[0].Accounts(); len(accounts) > 0 {
  534. addr = accounts[0].Address
  535. }
  536. }
  537. }
  538. // Set default gas & gas price if none were set
  539. gas, gasPrice := args.Gas.ToInt(), args.GasPrice.ToInt()
  540. if gas.Sign() == 0 {
  541. gas = big.NewInt(50000000)
  542. }
  543. if gasPrice.Sign() == 0 {
  544. gasPrice = new(big.Int).SetUint64(defaultGasPrice)
  545. }
  546. // Create new call message
  547. msg := types.NewMessage(addr, args.To, 0, args.Value.ToInt(), gas, gasPrice, args.Data, false)
  548. // Setup context so it may be cancelled the call has completed
  549. // or, in case of unmetered gas, setup a context with a timeout.
  550. var cancel context.CancelFunc
  551. if vmCfg.DisableGasMetering {
  552. ctx, cancel = context.WithTimeout(ctx, time.Second*5)
  553. } else {
  554. ctx, cancel = context.WithCancel(ctx)
  555. }
  556. // Make sure the context is cancelled when the call has completed
  557. // this makes sure resources are cleaned up.
  558. defer func() { cancel() }()
  559. // Get a new instance of the EVM.
  560. evm, vmError, err := s.b.GetEVM(ctx, msg, state, header, vmCfg)
  561. if err != nil {
  562. return nil, common.Big0, err
  563. }
  564. // Wait for the context to be done and cancel the evm. Even if the
  565. // EVM has finished, cancelling may be done (repeatedly)
  566. go func() {
  567. select {
  568. case <-ctx.Done():
  569. evm.Cancel()
  570. }
  571. }()
  572. // Setup the gas pool (also for unmetered requests)
  573. // and apply the message.
  574. gp := new(core.GasPool).AddGas(math.MaxBig256)
  575. res, gas, err := core.ApplyMessage(evm, msg, gp)
  576. if err := vmError(); err != nil {
  577. return nil, common.Big0, err
  578. }
  579. return res, gas, err
  580. }
  581. // Call executes the given transaction on the state for the given block number.
  582. // It doesn't make and changes in the state/blockchain and is useful to execute and retrieve values.
  583. func (s *PublicBlockChainAPI) Call(ctx context.Context, args CallArgs, blockNr rpc.BlockNumber) (hexutil.Bytes, error) {
  584. result, _, err := s.doCall(ctx, args, blockNr, vm.Config{DisableGasMetering: true})
  585. return (hexutil.Bytes)(result), err
  586. }
  587. // EstimateGas returns an estimate of the amount of gas needed to execute the given transaction.
  588. func (s *PublicBlockChainAPI) EstimateGas(ctx context.Context, args CallArgs) (*hexutil.Big, error) {
  589. // Binary search the gas requirement, as it may be higher than the amount used
  590. var lo, hi uint64
  591. if (*big.Int)(&args.Gas).Sign() != 0 {
  592. hi = (*big.Int)(&args.Gas).Uint64()
  593. } else {
  594. // Retrieve the current pending block to act as the gas ceiling
  595. block, err := s.b.BlockByNumber(ctx, rpc.PendingBlockNumber)
  596. if err != nil {
  597. return nil, err
  598. }
  599. hi = block.GasLimit().Uint64()
  600. }
  601. for lo+1 < hi {
  602. // Take a guess at the gas, and check transaction validity
  603. mid := (hi + lo) / 2
  604. (*big.Int)(&args.Gas).SetUint64(mid)
  605. _, gas, err := s.doCall(ctx, args, rpc.PendingBlockNumber, vm.Config{})
  606. // If the transaction became invalid or used all the gas (failed), raise the gas limit
  607. if err != nil || gas.Cmp((*big.Int)(&args.Gas)) == 0 {
  608. lo = mid
  609. continue
  610. }
  611. // Otherwise assume the transaction succeeded, lower the gas limit
  612. hi = mid
  613. }
  614. return (*hexutil.Big)(new(big.Int).SetUint64(hi)), nil
  615. }
  616. // ExecutionResult groups all structured logs emitted by the EVM
  617. // while replaying a transaction in debug mode as well as the amount of
  618. // gas used and the return value
  619. type ExecutionResult struct {
  620. Gas *big.Int `json:"gas"`
  621. ReturnValue string `json:"returnValue"`
  622. StructLogs []StructLogRes `json:"structLogs"`
  623. }
  624. // StructLogRes stores a structured log emitted by the EVM while replaying a
  625. // transaction in debug mode
  626. type StructLogRes struct {
  627. Pc uint64 `json:"pc"`
  628. Op string `json:"op"`
  629. Gas *big.Int `json:"gas"`
  630. GasCost *big.Int `json:"gasCost"`
  631. Depth int `json:"depth"`
  632. Error error `json:"error"`
  633. Stack []string `json:"stack"`
  634. Memory []string `json:"memory"`
  635. Storage map[string]string `json:"storage"`
  636. }
  637. // formatLogs formats EVM returned structured logs for json output
  638. func FormatLogs(structLogs []vm.StructLog) []StructLogRes {
  639. formattedStructLogs := make([]StructLogRes, len(structLogs))
  640. for index, trace := range structLogs {
  641. formattedStructLogs[index] = StructLogRes{
  642. Pc: trace.Pc,
  643. Op: trace.Op.String(),
  644. Gas: trace.Gas,
  645. GasCost: trace.GasCost,
  646. Depth: trace.Depth,
  647. Error: trace.Err,
  648. Stack: make([]string, len(trace.Stack)),
  649. Storage: make(map[string]string),
  650. }
  651. for i, stackValue := range trace.Stack {
  652. formattedStructLogs[index].Stack[i] = fmt.Sprintf("%x", math.PaddedBigBytes(stackValue, 32))
  653. }
  654. for i := 0; i+32 <= len(trace.Memory); i += 32 {
  655. formattedStructLogs[index].Memory = append(formattedStructLogs[index].Memory, fmt.Sprintf("%x", trace.Memory[i:i+32]))
  656. }
  657. for i, storageValue := range trace.Storage {
  658. formattedStructLogs[index].Storage[fmt.Sprintf("%x", i)] = fmt.Sprintf("%x", storageValue)
  659. }
  660. }
  661. return formattedStructLogs
  662. }
  663. // rpcOutputBlock converts the given block to the RPC output which depends on fullTx. If inclTx is true transactions are
  664. // returned. When fullTx is true the returned block contains full transaction details, otherwise it will only contain
  665. // transaction hashes.
  666. func (s *PublicBlockChainAPI) rpcOutputBlock(b *types.Block, inclTx bool, fullTx bool) (map[string]interface{}, error) {
  667. head := b.Header() // copies the header once
  668. fields := map[string]interface{}{
  669. "number": (*hexutil.Big)(head.Number),
  670. "hash": b.Hash(),
  671. "parentHash": head.ParentHash,
  672. "nonce": head.Nonce,
  673. "mixHash": head.MixDigest,
  674. "sha3Uncles": head.UncleHash,
  675. "logsBloom": head.Bloom,
  676. "stateRoot": head.Root,
  677. "miner": head.Coinbase,
  678. "difficulty": (*hexutil.Big)(head.Difficulty),
  679. "totalDifficulty": (*hexutil.Big)(s.b.GetTd(b.Hash())),
  680. "extraData": hexutil.Bytes(head.Extra),
  681. "size": hexutil.Uint64(uint64(b.Size().Int64())),
  682. "gasLimit": (*hexutil.Big)(head.GasLimit),
  683. "gasUsed": (*hexutil.Big)(head.GasUsed),
  684. "timestamp": (*hexutil.Big)(head.Time),
  685. "transactionsRoot": head.TxHash,
  686. "receiptsRoot": head.ReceiptHash,
  687. }
  688. if inclTx {
  689. formatTx := func(tx *types.Transaction) (interface{}, error) {
  690. return tx.Hash(), nil
  691. }
  692. if fullTx {
  693. formatTx = func(tx *types.Transaction) (interface{}, error) {
  694. return newRPCTransaction(b, tx.Hash())
  695. }
  696. }
  697. txs := b.Transactions()
  698. transactions := make([]interface{}, len(txs))
  699. var err error
  700. for i, tx := range b.Transactions() {
  701. if transactions[i], err = formatTx(tx); err != nil {
  702. return nil, err
  703. }
  704. }
  705. fields["transactions"] = transactions
  706. }
  707. uncles := b.Uncles()
  708. uncleHashes := make([]common.Hash, len(uncles))
  709. for i, uncle := range uncles {
  710. uncleHashes[i] = uncle.Hash()
  711. }
  712. fields["uncles"] = uncleHashes
  713. return fields, nil
  714. }
  715. // RPCTransaction represents a transaction that will serialize to the RPC representation of a transaction
  716. type RPCTransaction struct {
  717. BlockHash common.Hash `json:"blockHash"`
  718. BlockNumber *hexutil.Big `json:"blockNumber"`
  719. From common.Address `json:"from"`
  720. Gas *hexutil.Big `json:"gas"`
  721. GasPrice *hexutil.Big `json:"gasPrice"`
  722. Hash common.Hash `json:"hash"`
  723. Input hexutil.Bytes `json:"input"`
  724. Nonce hexutil.Uint64 `json:"nonce"`
  725. To *common.Address `json:"to"`
  726. TransactionIndex hexutil.Uint `json:"transactionIndex"`
  727. Value *hexutil.Big `json:"value"`
  728. V *hexutil.Big `json:"v"`
  729. R *hexutil.Big `json:"r"`
  730. S *hexutil.Big `json:"s"`
  731. }
  732. // newRPCPendingTransaction returns a pending transaction that will serialize to the RPC representation
  733. func newRPCPendingTransaction(tx *types.Transaction) *RPCTransaction {
  734. var signer types.Signer = types.FrontierSigner{}
  735. if tx.Protected() {
  736. signer = types.NewEIP155Signer(tx.ChainId())
  737. }
  738. from, _ := types.Sender(signer, tx)
  739. v, r, s := tx.RawSignatureValues()
  740. return &RPCTransaction{
  741. From: from,
  742. Gas: (*hexutil.Big)(tx.Gas()),
  743. GasPrice: (*hexutil.Big)(tx.GasPrice()),
  744. Hash: tx.Hash(),
  745. Input: hexutil.Bytes(tx.Data()),
  746. Nonce: hexutil.Uint64(tx.Nonce()),
  747. To: tx.To(),
  748. Value: (*hexutil.Big)(tx.Value()),
  749. V: (*hexutil.Big)(v),
  750. R: (*hexutil.Big)(r),
  751. S: (*hexutil.Big)(s),
  752. }
  753. }
  754. // newRPCTransaction returns a transaction that will serialize to the RPC representation.
  755. func newRPCTransactionFromBlockIndex(b *types.Block, txIndex uint) (*RPCTransaction, error) {
  756. if txIndex < uint(len(b.Transactions())) {
  757. tx := b.Transactions()[txIndex]
  758. var signer types.Signer = types.FrontierSigner{}
  759. if tx.Protected() {
  760. signer = types.NewEIP155Signer(tx.ChainId())
  761. }
  762. from, _ := types.Sender(signer, tx)
  763. v, r, s := tx.RawSignatureValues()
  764. return &RPCTransaction{
  765. BlockHash: b.Hash(),
  766. BlockNumber: (*hexutil.Big)(b.Number()),
  767. From: from,
  768. Gas: (*hexutil.Big)(tx.Gas()),
  769. GasPrice: (*hexutil.Big)(tx.GasPrice()),
  770. Hash: tx.Hash(),
  771. Input: hexutil.Bytes(tx.Data()),
  772. Nonce: hexutil.Uint64(tx.Nonce()),
  773. To: tx.To(),
  774. TransactionIndex: hexutil.Uint(txIndex),
  775. Value: (*hexutil.Big)(tx.Value()),
  776. V: (*hexutil.Big)(v),
  777. R: (*hexutil.Big)(r),
  778. S: (*hexutil.Big)(s),
  779. }, nil
  780. }
  781. return nil, nil
  782. }
  783. // newRPCRawTransactionFromBlockIndex returns the bytes of a transaction given a block and a transaction index.
  784. func newRPCRawTransactionFromBlockIndex(b *types.Block, txIndex uint) (hexutil.Bytes, error) {
  785. if txIndex < uint(len(b.Transactions())) {
  786. tx := b.Transactions()[txIndex]
  787. return rlp.EncodeToBytes(tx)
  788. }
  789. return nil, nil
  790. }
  791. // newRPCTransaction returns a transaction that will serialize to the RPC representation.
  792. func newRPCTransaction(b *types.Block, txHash common.Hash) (*RPCTransaction, error) {
  793. for idx, tx := range b.Transactions() {
  794. if tx.Hash() == txHash {
  795. return newRPCTransactionFromBlockIndex(b, uint(idx))
  796. }
  797. }
  798. return nil, nil
  799. }
  800. // PublicTransactionPoolAPI exposes methods for the RPC interface
  801. type PublicTransactionPoolAPI struct {
  802. b Backend
  803. }
  804. // NewPublicTransactionPoolAPI creates a new RPC service with methods specific for the transaction pool.
  805. func NewPublicTransactionPoolAPI(b Backend) *PublicTransactionPoolAPI {
  806. return &PublicTransactionPoolAPI{b}
  807. }
  808. func getTransaction(chainDb ethdb.Database, b Backend, txHash common.Hash) (*types.Transaction, bool, error) {
  809. txData, err := chainDb.Get(txHash.Bytes())
  810. isPending := false
  811. tx := new(types.Transaction)
  812. if err == nil && len(txData) > 0 {
  813. if err := rlp.DecodeBytes(txData, tx); err != nil {
  814. return nil, isPending, err
  815. }
  816. } else {
  817. // pending transaction?
  818. tx = b.GetPoolTransaction(txHash)
  819. isPending = true
  820. }
  821. return tx, isPending, nil
  822. }
  823. // GetBlockTransactionCountByNumber returns the number of transactions in the block with the given block number.
  824. func (s *PublicTransactionPoolAPI) GetBlockTransactionCountByNumber(ctx context.Context, blockNr rpc.BlockNumber) *hexutil.Uint {
  825. if block, _ := s.b.BlockByNumber(ctx, blockNr); block != nil {
  826. n := hexutil.Uint(len(block.Transactions()))
  827. return &n
  828. }
  829. return nil
  830. }
  831. // GetBlockTransactionCountByHash returns the number of transactions in the block with the given hash.
  832. func (s *PublicTransactionPoolAPI) GetBlockTransactionCountByHash(ctx context.Context, blockHash common.Hash) *hexutil.Uint {
  833. if block, _ := s.b.GetBlock(ctx, blockHash); block != nil {
  834. n := hexutil.Uint(len(block.Transactions()))
  835. return &n
  836. }
  837. return nil
  838. }
  839. // GetTransactionByBlockNumberAndIndex returns the transaction for the given block number and index.
  840. func (s *PublicTransactionPoolAPI) GetTransactionByBlockNumberAndIndex(ctx context.Context, blockNr rpc.BlockNumber, index hexutil.Uint) (*RPCTransaction, error) {
  841. if block, _ := s.b.BlockByNumber(ctx, blockNr); block != nil {
  842. return newRPCTransactionFromBlockIndex(block, uint(index))
  843. }
  844. return nil, nil
  845. }
  846. // GetTransactionByBlockHashAndIndex returns the transaction for the given block hash and index.
  847. func (s *PublicTransactionPoolAPI) GetTransactionByBlockHashAndIndex(ctx context.Context, blockHash common.Hash, index hexutil.Uint) (*RPCTransaction, error) {
  848. if block, _ := s.b.GetBlock(ctx, blockHash); block != nil {
  849. return newRPCTransactionFromBlockIndex(block, uint(index))
  850. }
  851. return nil, nil
  852. }
  853. // GetRawTransactionByBlockNumberAndIndex returns the bytes of the transaction for the given block number and index.
  854. func (s *PublicTransactionPoolAPI) GetRawTransactionByBlockNumberAndIndex(ctx context.Context, blockNr rpc.BlockNumber, index hexutil.Uint) (hexutil.Bytes, error) {
  855. if block, _ := s.b.BlockByNumber(ctx, blockNr); block != nil {
  856. return newRPCRawTransactionFromBlockIndex(block, uint(index))
  857. }
  858. return nil, nil
  859. }
  860. // GetRawTransactionByBlockHashAndIndex returns the bytes of the transaction for the given block hash and index.
  861. func (s *PublicTransactionPoolAPI) GetRawTransactionByBlockHashAndIndex(ctx context.Context, blockHash common.Hash, index hexutil.Uint) (hexutil.Bytes, error) {
  862. if block, _ := s.b.GetBlock(ctx, blockHash); block != nil {
  863. return newRPCRawTransactionFromBlockIndex(block, uint(index))
  864. }
  865. return nil, nil
  866. }
  867. // GetTransactionCount returns the number of transactions the given address has sent for the given block number
  868. func (s *PublicTransactionPoolAPI) GetTransactionCount(ctx context.Context, address common.Address, blockNr rpc.BlockNumber) (*hexutil.Uint64, error) {
  869. state, _, err := s.b.StateAndHeaderByNumber(ctx, blockNr)
  870. if state == nil || err != nil {
  871. return nil, err
  872. }
  873. nonce, err := state.GetNonce(ctx, address)
  874. if err != nil {
  875. return nil, err
  876. }
  877. return (*hexutil.Uint64)(&nonce), nil
  878. }
  879. // getTransactionBlockData fetches the meta data for the given transaction from the chain database. This is useful to
  880. // retrieve block information for a hash. It returns the block hash, block index and transaction index.
  881. func getTransactionBlockData(chainDb ethdb.Database, txHash common.Hash) (common.Hash, uint64, uint64, error) {
  882. var txBlock struct {
  883. BlockHash common.Hash
  884. BlockIndex uint64
  885. Index uint64
  886. }
  887. blockData, err := chainDb.Get(append(txHash.Bytes(), 0x0001))
  888. if err != nil {
  889. return common.Hash{}, uint64(0), uint64(0), err
  890. }
  891. reader := bytes.NewReader(blockData)
  892. if err = rlp.Decode(reader, &txBlock); err != nil {
  893. return common.Hash{}, uint64(0), uint64(0), err
  894. }
  895. return txBlock.BlockHash, txBlock.BlockIndex, txBlock.Index, nil
  896. }
  897. // GetTransactionByHash returns the transaction for the given hash
  898. func (s *PublicTransactionPoolAPI) GetTransactionByHash(ctx context.Context, txHash common.Hash) (*RPCTransaction, error) {
  899. var tx *types.Transaction
  900. var isPending bool
  901. var err error
  902. if tx, isPending, err = getTransaction(s.b.ChainDb(), s.b, txHash); err != nil {
  903. log.Debug(fmt.Sprintf("%v\n", err))
  904. return nil, nil
  905. } else if tx == nil {
  906. return nil, nil
  907. }
  908. if isPending {
  909. return newRPCPendingTransaction(tx), nil
  910. }
  911. blockHash, _, _, err := getTransactionBlockData(s.b.ChainDb(), txHash)
  912. if err != nil {
  913. log.Debug(fmt.Sprintf("%v\n", err))
  914. return nil, nil
  915. }
  916. if block, _ := s.b.GetBlock(ctx, blockHash); block != nil {
  917. return newRPCTransaction(block, txHash)
  918. }
  919. return nil, nil
  920. }
  921. // GetRawTransactionByHash returns the bytes of the transaction for the given hash.
  922. func (s *PublicTransactionPoolAPI) GetRawTransactionByHash(ctx context.Context, txHash common.Hash) (hexutil.Bytes, error) {
  923. var tx *types.Transaction
  924. var err error
  925. if tx, _, err = getTransaction(s.b.ChainDb(), s.b, txHash); err != nil {
  926. log.Debug(fmt.Sprintf("%v\n", err))
  927. return nil, nil
  928. } else if tx == nil {
  929. return nil, nil
  930. }
  931. return rlp.EncodeToBytes(tx)
  932. }
  933. // GetTransactionReceipt returns the transaction receipt for the given transaction hash.
  934. func (s *PublicTransactionPoolAPI) GetTransactionReceipt(txHash common.Hash) (map[string]interface{}, error) {
  935. receipt := core.GetReceipt(s.b.ChainDb(), txHash)
  936. if receipt == nil {
  937. log.Debug(fmt.Sprintf("receipt not found for transaction %s", txHash.Hex()))
  938. return nil, nil
  939. }
  940. tx, _, err := getTransaction(s.b.ChainDb(), s.b, txHash)
  941. if err != nil {
  942. log.Debug(fmt.Sprintf("%v\n", err))
  943. return nil, nil
  944. }
  945. txBlock, blockIndex, index, err := getTransactionBlockData(s.b.ChainDb(), txHash)
  946. if err != nil {
  947. log.Debug(fmt.Sprintf("%v\n", err))
  948. return nil, nil
  949. }
  950. var signer types.Signer = types.FrontierSigner{}
  951. if tx.Protected() {
  952. signer = types.NewEIP155Signer(tx.ChainId())
  953. }
  954. from, _ := types.Sender(signer, tx)
  955. fields := map[string]interface{}{
  956. "root": hexutil.Bytes(receipt.PostState),
  957. "blockHash": txBlock,
  958. "blockNumber": hexutil.Uint64(blockIndex),
  959. "transactionHash": txHash,
  960. "transactionIndex": hexutil.Uint64(index),
  961. "from": from,
  962. "to": tx.To(),
  963. "gasUsed": (*hexutil.Big)(receipt.GasUsed),
  964. "cumulativeGasUsed": (*hexutil.Big)(receipt.CumulativeGasUsed),
  965. "contractAddress": nil,
  966. "logs": receipt.Logs,
  967. "logsBloom": receipt.Bloom,
  968. }
  969. if receipt.Logs == nil {
  970. fields["logs"] = [][]*types.Log{}
  971. }
  972. // If the ContractAddress is 20 0x0 bytes, assume it is not a contract creation
  973. if receipt.ContractAddress != (common.Address{}) {
  974. fields["contractAddress"] = receipt.ContractAddress
  975. }
  976. return fields, nil
  977. }
  978. // sign is a helper function that signs a transaction with the private key of the given address.
  979. func (s *PublicTransactionPoolAPI) sign(addr common.Address, tx *types.Transaction) (*types.Transaction, error) {
  980. // Look up the wallet containing the requested signer
  981. account := accounts.Account{Address: addr}
  982. wallet, err := s.b.AccountManager().Find(account)
  983. if err != nil {
  984. return nil, err
  985. }
  986. // Request the wallet to sign the transaction
  987. var chainID *big.Int
  988. if config := s.b.ChainConfig(); config.IsEIP155(s.b.CurrentBlock().Number()) {
  989. chainID = config.ChainId
  990. }
  991. return wallet.SignTx(account, tx, chainID)
  992. }
  993. // SendTxArgs represents the arguments to sumbit a new transaction into the transaction pool.
  994. type SendTxArgs struct {
  995. From common.Address `json:"from"`
  996. To *common.Address `json:"to"`
  997. Gas *hexutil.Big `json:"gas"`
  998. GasPrice *hexutil.Big `json:"gasPrice"`
  999. Value *hexutil.Big `json:"value"`
  1000. Data hexutil.Bytes `json:"data"`
  1001. Nonce *hexutil.Uint64 `json:"nonce"`
  1002. }
  1003. // prepareSendTxArgs is a helper function that fills in default values for unspecified tx fields.
  1004. func (args *SendTxArgs) setDefaults(ctx context.Context, b Backend) error {
  1005. if args.Gas == nil {
  1006. args.Gas = (*hexutil.Big)(big.NewInt(defaultGas))
  1007. }
  1008. if args.GasPrice == nil {
  1009. price, err := b.SuggestPrice(ctx)
  1010. if err != nil {
  1011. return err
  1012. }
  1013. args.GasPrice = (*hexutil.Big)(price)
  1014. }
  1015. if args.Value == nil {
  1016. args.Value = new(hexutil.Big)
  1017. }
  1018. if args.Nonce == nil {
  1019. nonce, err := b.GetPoolNonce(ctx, args.From)
  1020. if err != nil {
  1021. return err
  1022. }
  1023. args.Nonce = (*hexutil.Uint64)(&nonce)
  1024. }
  1025. return nil
  1026. }
  1027. func (args *SendTxArgs) toTransaction() *types.Transaction {
  1028. if args.To == nil {
  1029. return types.NewContractCreation(uint64(*args.Nonce), (*big.Int)(args.Value), (*big.Int)(args.Gas), (*big.Int)(args.GasPrice), args.Data)
  1030. }
  1031. return types.NewTransaction(uint64(*args.Nonce), *args.To, (*big.Int)(args.Value), (*big.Int)(args.Gas), (*big.Int)(args.GasPrice), args.Data)
  1032. }
  1033. // submitTransaction is a helper function that submits tx to txPool and logs a message.
  1034. func submitTransaction(ctx context.Context, b Backend, tx *types.Transaction) (common.Hash, error) {
  1035. if err := b.SendTx(ctx, tx); err != nil {
  1036. return common.Hash{}, err
  1037. }
  1038. if tx.To() == nil {
  1039. signer := types.MakeSigner(b.ChainConfig(), b.CurrentBlock().Number())
  1040. from, _ := types.Sender(signer, tx)
  1041. addr := crypto.CreateAddress(from, tx.Nonce())
  1042. log.Info(fmt.Sprintf("Tx(%s) created: %s\n", tx.Hash().Hex(), addr.Hex()))
  1043. } else {
  1044. log.Info(fmt.Sprintf("Tx(%s) to: %s\n", tx.Hash().Hex(), tx.To().Hex()))
  1045. }
  1046. return tx.Hash(), nil
  1047. }
  1048. // SendTransaction creates a transaction for the given argument, sign it and submit it to the
  1049. // transaction pool.
  1050. func (s *PublicTransactionPoolAPI) SendTransaction(ctx context.Context, args SendTxArgs) (common.Hash, error) {
  1051. // Set some sanity defaults and terminate on failure
  1052. if err := args.setDefaults(ctx, s.b); err != nil {
  1053. return common.Hash{}, err
  1054. }
  1055. // Look up the wallet containing the requested signer
  1056. account := accounts.Account{Address: args.From}
  1057. wallet, err := s.b.AccountManager().Find(account)
  1058. if err != nil {
  1059. return common.Hash{}, err
  1060. }
  1061. // Assemble the transaction and sign with the wallet
  1062. tx := args.toTransaction()
  1063. var chainID *big.Int
  1064. if config := s.b.ChainConfig(); config.IsEIP155(s.b.CurrentBlock().Number()) {
  1065. chainID = config.ChainId
  1066. }
  1067. signed, err := wallet.SignTx(account, tx, chainID)
  1068. if err != nil {
  1069. return common.Hash{}, err
  1070. }
  1071. return submitTransaction(ctx, s.b, signed)
  1072. }
  1073. // SendRawTransaction will add the signed transaction to the transaction pool.
  1074. // The sender is responsible for signing the transaction and using the correct nonce.
  1075. func (s *PublicTransactionPoolAPI) SendRawTransaction(ctx context.Context, encodedTx hexutil.Bytes) (string, error) {
  1076. tx := new(types.Transaction)
  1077. if err := rlp.DecodeBytes(encodedTx, tx); err != nil {
  1078. return "", err
  1079. }
  1080. if err := s.b.SendTx(ctx, tx); err != nil {
  1081. return "", err
  1082. }
  1083. signer := types.MakeSigner(s.b.ChainConfig(), s.b.CurrentBlock().Number())
  1084. if tx.To() == nil {
  1085. from, err := types.Sender(signer, tx)
  1086. if err != nil {
  1087. return "", err
  1088. }
  1089. addr := crypto.CreateAddress(from, tx.Nonce())
  1090. log.Info(fmt.Sprintf("Tx(%x) created: %x\n", tx.Hash(), addr))
  1091. } else {
  1092. log.Info(fmt.Sprintf("Tx(%x) to: %x\n", tx.Hash(), tx.To()))
  1093. }
  1094. return tx.Hash().Hex(), nil
  1095. }
  1096. // Sign calculates an ECDSA signature for:
  1097. // keccack256("\x19Ethereum Signed Message:\n" + len(message) + message).
  1098. //
  1099. // Note, the produced signature conforms to the secp256k1 curve R, S and V values,
  1100. // where the V value will be 27 or 28 for legacy reasons.
  1101. //
  1102. // The account associated with addr must be unlocked.
  1103. //
  1104. // https://github.com/ethereum/wiki/wiki/JSON-RPC#eth_sign
  1105. func (s *PublicTransactionPoolAPI) Sign(addr common.Address, data hexutil.Bytes) (hexutil.Bytes, error) {
  1106. // Look up the wallet containing the requested signer
  1107. account := accounts.Account{Address: addr}
  1108. wallet, err := s.b.AccountManager().Find(account)
  1109. if err != nil {
  1110. return nil, err
  1111. }
  1112. // Sign the requested hash with the wallet
  1113. signature, err := wallet.SignHash(account, signHash(data))
  1114. if err == nil {
  1115. signature[64] += 27 // Transform V from 0/1 to 27/28 according to the yellow paper
  1116. }
  1117. return signature, err
  1118. }
  1119. // SignTransactionResult represents a RLP encoded signed transaction.
  1120. type SignTransactionResult struct {
  1121. Raw hexutil.Bytes `json:"raw"`
  1122. Tx *types.Transaction `json:"tx"`
  1123. }
  1124. // SignTransaction will sign the given transaction with the from account.
  1125. // The node needs to have the private key of the account corresponding with
  1126. // the given from address and it needs to be unlocked.
  1127. func (s *PublicTransactionPoolAPI) SignTransaction(ctx context.Context, args SendTxArgs) (*SignTransactionResult, error) {
  1128. if err := args.setDefaults(ctx, s.b); err != nil {
  1129. return nil, err
  1130. }
  1131. tx, err := s.sign(args.From, args.toTransaction())
  1132. if err != nil {
  1133. return nil, err
  1134. }
  1135. data, err := rlp.EncodeToBytes(tx)
  1136. if err != nil {
  1137. return nil, err
  1138. }
  1139. return &SignTransactionResult{data, tx}, nil
  1140. }
  1141. // PendingTransactions returns the transactions that are in the transaction pool and have a from address that is one of
  1142. // the accounts this node manages.
  1143. func (s *PublicTransactionPoolAPI) PendingTransactions() ([]*RPCTransaction, error) {
  1144. pending, err := s.b.GetPoolTransactions()
  1145. if err != nil {
  1146. return nil, err
  1147. }
  1148. transactions := make([]*RPCTransaction, 0, len(pending))
  1149. for _, tx := range pending {
  1150. var signer types.Signer = types.HomesteadSigner{}
  1151. if tx.Protected() {
  1152. signer = types.NewEIP155Signer(tx.ChainId())
  1153. }
  1154. from, _ := types.Sender(signer, tx)
  1155. if _, err := s.b.AccountManager().Find(accounts.Account{Address: from}); err == nil {
  1156. transactions = append(transactions, newRPCPendingTransaction(tx))
  1157. }
  1158. }
  1159. return transactions, nil
  1160. }
  1161. // Resend accepts an existing transaction and a new gas price and limit. It will remove
  1162. // the given transaction from the pool and reinsert it with the new gas price and limit.
  1163. func (s *PublicTransactionPoolAPI) Resend(ctx context.Context, sendArgs SendTxArgs, gasPrice, gasLimit *hexutil.Big) (common.Hash, error) {
  1164. if sendArgs.Nonce == nil {
  1165. return common.Hash{}, fmt.Errorf("missing transaction nonce in transaction spec")
  1166. }
  1167. if err := sendArgs.setDefaults(ctx, s.b); err != nil {
  1168. return common.Hash{}, err
  1169. }
  1170. matchTx := sendArgs.toTransaction()
  1171. pending, err := s.b.GetPoolTransactions()
  1172. if err != nil {
  1173. return common.Hash{}, err
  1174. }
  1175. for _, p := range pending {
  1176. var signer types.Signer = types.HomesteadSigner{}
  1177. if p.Protected() {
  1178. signer = types.NewEIP155Signer(p.ChainId())
  1179. }
  1180. wantSigHash := signer.Hash(matchTx)
  1181. if pFrom, err := types.Sender(signer, p); err == nil && pFrom == sendArgs.From && signer.Hash(p) == wantSigHash {
  1182. // Match. Re-sign and send the transaction.
  1183. if gasPrice != nil {
  1184. sendArgs.GasPrice = gasPrice
  1185. }
  1186. if gasLimit != nil {
  1187. sendArgs.Gas = gasLimit
  1188. }
  1189. signedTx, err := s.sign(sendArgs.From, sendArgs.toTransaction())
  1190. if err != nil {
  1191. return common.Hash{}, err
  1192. }
  1193. s.b.RemoveTx(p.Hash())
  1194. if err = s.b.SendTx(ctx, signedTx); err != nil {
  1195. return common.Hash{}, err
  1196. }
  1197. return signedTx.Hash(), nil
  1198. }
  1199. }
  1200. return common.Hash{}, fmt.Errorf("Transaction %#x not found", matchTx.Hash())
  1201. }
  1202. // PublicDebugAPI is the collection of Etheruem APIs exposed over the public
  1203. // debugging endpoint.
  1204. type PublicDebugAPI struct {
  1205. b Backend
  1206. }
  1207. // NewPublicDebugAPI creates a new API definition for the public debug methods
  1208. // of the Ethereum service.
  1209. func NewPublicDebugAPI(b Backend) *PublicDebugAPI {
  1210. return &PublicDebugAPI{b: b}
  1211. }
  1212. // GetBlockRlp retrieves the RLP encoded for of a single block.
  1213. func (api *PublicDebugAPI) GetBlockRlp(ctx context.Context, number uint64) (string, error) {
  1214. block, _ := api.b.BlockByNumber(ctx, rpc.BlockNumber(number))
  1215. if block == nil {
  1216. return "", fmt.Errorf("block #%d not found", number)
  1217. }
  1218. encoded, err := rlp.EncodeToBytes(block)
  1219. if err != nil {
  1220. return "", err
  1221. }
  1222. return fmt.Sprintf("%x", encoded), nil
  1223. }
  1224. // PrintBlock retrieves a block and returns its pretty printed form.
  1225. func (api *PublicDebugAPI) PrintBlock(ctx context.Context, number uint64) (string, error) {
  1226. block, _ := api.b.BlockByNumber(ctx, rpc.BlockNumber(number))
  1227. if block == nil {
  1228. return "", fmt.Errorf("block #%d not found", number)
  1229. }
  1230. return fmt.Sprintf("%s", block), nil
  1231. }
  1232. // SeedHash retrieves the seed hash of a block.
  1233. func (api *PublicDebugAPI) SeedHash(ctx context.Context, number uint64) (string, error) {
  1234. block, _ := api.b.BlockByNumber(ctx, rpc.BlockNumber(number))
  1235. if block == nil {
  1236. return "", fmt.Errorf("block #%d not found", number)
  1237. }
  1238. hash, err := ethash.GetSeedHash(number)
  1239. if err != nil {
  1240. return "", err
  1241. }
  1242. return fmt.Sprintf("0x%x", hash), nil
  1243. }
  1244. // PrivateDebugAPI is the collection of Etheruem APIs exposed over the private
  1245. // debugging endpoint.
  1246. type PrivateDebugAPI struct {
  1247. b Backend
  1248. }
  1249. // NewPrivateDebugAPI creates a new API definition for the private debug methods
  1250. // of the Ethereum service.
  1251. func NewPrivateDebugAPI(b Backend) *PrivateDebugAPI {
  1252. return &PrivateDebugAPI{b: b}
  1253. }
  1254. // ChaindbProperty returns leveldb properties of the chain database.
  1255. func (api *PrivateDebugAPI) ChaindbProperty(property string) (string, error) {
  1256. ldb, ok := api.b.ChainDb().(interface {
  1257. LDB() *leveldb.DB
  1258. })
  1259. if !ok {
  1260. return "", fmt.Errorf("chaindbProperty does not work for memory databases")
  1261. }
  1262. if property == "" {
  1263. property = "leveldb.stats"
  1264. } else if !strings.HasPrefix(property, "leveldb.") {
  1265. property = "leveldb." + property
  1266. }
  1267. return ldb.LDB().GetProperty(property)
  1268. }
  1269. func (api *PrivateDebugAPI) ChaindbCompact() error {
  1270. ldb, ok := api.b.ChainDb().(interface {
  1271. LDB() *leveldb.DB
  1272. })
  1273. if !ok {
  1274. return fmt.Errorf("chaindbCompact does not work for memory databases")
  1275. }
  1276. for b := byte(0); b < 255; b++ {
  1277. log.Info(fmt.Sprintf("compacting chain DB range 0x%0.2X-0x%0.2X", b, b+1))
  1278. err := ldb.LDB().CompactRange(util.Range{Start: []byte{b}, Limit: []byte{b + 1}})
  1279. if err != nil {
  1280. log.Error(fmt.Sprintf("compaction error: %v", err))
  1281. return err
  1282. }
  1283. }
  1284. return nil
  1285. }
  1286. // SetHead rewinds the head of the blockchain to a previous block.
  1287. func (api *PrivateDebugAPI) SetHead(number hexutil.Uint64) {
  1288. api.b.SetHead(uint64(number))
  1289. }
  1290. // PublicNetAPI offers network related RPC methods
  1291. type PublicNetAPI struct {
  1292. net *p2p.Server
  1293. networkVersion int
  1294. }
  1295. // NewPublicNetAPI creates a new net API instance.
  1296. func NewPublicNetAPI(net *p2p.Server, networkVersion int) *PublicNetAPI {
  1297. return &PublicNetAPI{net, networkVersion}
  1298. }
  1299. // Listening returns an indication if the node is listening for network connections.
  1300. func (s *PublicNetAPI) Listening() bool {
  1301. return true // always listening
  1302. }
  1303. // PeerCount returns the number of connected peers
  1304. func (s *PublicNetAPI) PeerCount() hexutil.Uint {
  1305. return hexutil.Uint(s.net.PeerCount())
  1306. }
  1307. // Version returns the current ethereum protocol version.
  1308. func (s *PublicNetAPI) Version() string {
  1309. return fmt.Sprintf("%d", s.networkVersion)
  1310. }